Class HeidenhainPivotTransformationSyntax
- Namespace
- Hi.NcParsers.LogicSyntaxs.Heidenhain
- Assembly
- HiMech.dll
Heidenhain pivot gate over the shared engine
(PivotTransformUtil): writes the
PivotTransformSource entry on blocks
where commanded XYZ needs the Pn→MC kinematic rigid transform — an
active tilted plane (HeidenhainPlaneTiltSyntax's
PLANE SPATIAL term, or a mixed-dialect G68/G68.2 term), an
active RTCP modal (RtcpTerms on
the ToolHeightCompensation section — the term check
covers RTCP blocks whose rotary state is stable, which the
Dynamic-entry branch alone would miss), or a Dynamic chain entry.
The third sibling gate after PivotTransformationSyntax
(ISO/Fanuc) and SiemensPivotTransformationSyntax;
all write the identical JSON vocabulary through the shared engine and
only one gate is registered per brand pipeline. Heidenhain has no
plain-geometry-frame exclusion (klartext datum shifts use their own
chain sources, never TiltTransform). Same
chain-position contract: after all Pn-frame writers, so the
PivotTransform entry lands last.
public class HeidenhainPivotTransformationSyntax : ISituNcSyntax, INcSyntax, IMakeXmlSource
- Inheritance
-
HeidenhainPivotTransformationSyntax
- Implements
- Inherited Members
- Extension Methods
Examples
Real-kinematics cases below wire TestDeps.CodeKinematics
with the default chain code [O][Z][A][w];[O][Y][X][B][S][t]
— a table-A / head-B 5-axis machine (see
PivotTransformationSyntax's corpus notes for the
zero-offset chain caveats).
Plain-mode skip — no tilt, no RTCP: untouched.
#BeforeBuild:{}
#AfterBuild:
{}
Indexed rotary without tilt/RTCP (the inactive G69 sentinel) — plain
mode, the gate must not fold the pivot:
#BeforeBuild:
{
"TiltTransform": { "Term": "G69" },
"MachineCoordinateState": { "A": 45 }
}
#AfterBuild:
{
"TiltTransform": { "Term": "G69" },
"MachineCoordinateState": { "A": 45 }
}
Active M128 RTCP signalled by the ToolHeightCompensation term — the
TestDeps.Kinematics stub makes the engine's pivot matrix
collapse to identity; no Dynamic entry exists (stable rotary), so
the entry stays Static — the branch the Dynamic-only detection
would miss:
#BeforeBuild:
{
"ToolHeightCompensation": { "Offset_mm": 50, "Term": "M128", "OffsetId": 1 }
}
#AfterBuild:
{
"ToolHeightCompensation": { "Offset_mm": 50, "Term": "M128", "OffsetId": 1 },
"ProgramToMcTransform": [
{
"Source": "PivotTransform",
"Kind": "Static",
"Mat4d": [1,0,0,0, 0,1,0,0, 0,0,1,0, 0,0,0,1]
}
]
}
Active PLANE SPATIAL with an indexed table angle — real kinematics:
the engine folds the table-A Rx(45°) rigid matrix, the same math the
ISO sibling produces for G68.2:
#BeforeBuild:
{
"TiltTransform": { "Term": "PLANE SPATIAL" },
"MachineCoordinateState": { "A": 45 }
}
#AfterBuild:
{
"TiltTransform": { "Term": "PLANE SPATIAL" },
"MachineCoordinateState": { "A": 45 },
"ProgramToMcTransform": [
{
"Source": "PivotTransform",
"Kind": "Static",
"Mat4d": [
1, 0, 0, 0,
0, 0.7071067811865475, -0.7071067811865475, 0,
0, 0.7071067811865475, 0.7071067811865475, 0,
0, 0, 0, 1
]
}
]
}
Constructors
HeidenhainPivotTransformationSyntax()
Initializes a new instance with default settings.
public HeidenhainPivotTransformationSyntax()
HeidenhainPivotTransformationSyntax(XElement)
Initializes a new instance by deserializing from the given XML element.
public HeidenhainPivotTransformationSyntax(XElement src)
Parameters
srcXElementSource XML element.
Properties
Name
Syntax kind name (typically the concrete type name).
public string Name { get; }
Property Value
XName
XML element name used to register this syntax with XFactory.
public static string XName { get; }
Property Value
Methods
Build(LazyLinkedListNode<SyntaxPiece>, List<INcDependency>, NcDiagnosticProgress)
Build syntax arrangement into the
syntaxPieceNode in-place.
public void Build(LazyLinkedListNode<SyntaxPiece> syntaxPieceNode, List<INcDependency> ncDependencyList, NcDiagnosticProgress ncDiagnosticProgress)
Parameters
syntaxPieceNodeLazyLinkedListNode<SyntaxPiece>ncDependencyListList<INcDependency>ncDiagnosticProgressNcDiagnosticProgress
MakeXmlSource(string, string, bool)
Creates an XML representation of the object. This method may also generate additional resources such as related files.
public XElement MakeXmlSource(string baseDirectory, string relFile, bool exhibitionOnly)
Parameters
baseDirectorystringThe base directory for resolving relative paths
relFilestringThe relative file path for the XML source
exhibitionOnlyboolif true, the extended file creation is suppressed.
Returns
- XElement
An XML element representing the object's state
Remarks
For the demand of easy moving source folder (especially project folder) without configuration file path corruption, the relative file path is applied.
The baseDirectory is typically the folder at the nearest configuration file folder.
Since the folder can be moving with the configuration file.
Reg(XFactory)
Registers this type's deserializer with the given XFactory
(or Default when factory is
null). Idempotent.
public static void Reg(XFactory factory = null)
Parameters
factoryXFactory